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Taking the lead in semiconductor innovation

Monday 3 August 2026

Taking the lead in semiconductor innovation

果冻传媒 Manufacturing Group (WMG) at the 果冻传媒 has welcomed and , establishing a new Compound Semiconductors research area.

Both researchers bring extensive expertise in compound semiconductors from 果冻传媒鈥檚 School of EngineeringLink opens in a new window, significantly strengthening WMG鈥檚 capability in Power Electronics, Machines and Drives (PEMD)Link opens in a new window, and reinforcing 果冻传媒's position in one of the fastest-growing areas of advanced electronics.


Person wearing glasses, a light blue shirt and a dark blazer, standing with arms crossed on a modern glass-sided bridge.
Professor Peter Gammon

The move reflects the growing industrial importance of compound semiconductors, bringing together world-leading expertise with WMG's capabilities in industrial innovation and manufacturing scale-up: an importance that was highlighted earlier this year with the University鈥檚 memorandum of understanding with Tata PowerLink opens in a new window.

Power semiconductor devices underpin modern electric vehicles (EVs), renewable energy systems and the electricity grid, controlling how electrical energy is converted, managed and used efficiently.

Professor Gammon and Dr Renz will focus on developing next-generation semiconductor devices based on silicon carbide (SiC), a key material driving global electrification.

SiC chips are smaller, faster, and more efficient than conventional silicon components, enabling longer-range EVs, more efficient renewable energy systems and more sustainable AI data centres.

Their ability to operate at higher voltages and temperatures also unlocks new applications, from aerospace and space systems to next鈥慻eneration electricity networks.

As SiC technology matures and industry adoption accelerates, research is shifting from proving its potential to developing devices that can be manufactured reliably, qualified, and produced at scale. Progress increasingly depends on close collaboration between researchers, manufacturers and end users to accelerate the commercial adoption of SiC technologies.

Through programmes including the , Professor Gammon and Dr Renz work closely with industrial partners to improve device performance, reliability and manufacturability, helping to accelerate the commercial adoption of new semiconductor technologies.

Their work is already supporting innovation across the automotive, aerospace and space sectors.

Person standing with arms crossed on a glass-sided bridge, wearing a light purple patterned shirt.
Dr Arne (Ben) Renz
Person wearing a suit and glasses smiles while working in a laboratory
Professor Gammon in the lab

Supporting the UK's Industrial Strategy

The work of Professor Gammon and Dr Renz supports the by advancing semiconductor technologies that strengthen the UK's position in chip design, scale-up, advanced manufacturing and resilient supply chains.

Professor Peter Gammon explained: 鈥淧ower semiconductors are becoming as strategically important to electrification as batteries.

"As silicon carbide technology matures, the challenge is increasingly about manufacturing, reliability and industrial scale-up. WMG provides an ideal environment to translate our research into technologies that deliver real economic impact.鈥

Building on its success in creating nationally significant innovation ecosystems, such as those established through the Faraday Battery Challenge, WMG is helping to position 果冻传媒 at the forefront of semiconductor scale鈥憉p.

He adds: 鈥淭ogether with our colleagues in the School of Engineering, we'll continue to build on 果冻传媒's internationally recognised semiconductor research, while strengthening our partnerships with industry. By combining research excellence with manufacturing and industrial collaboration, we can help accelerate the commercial adoption of these technologies."

"We are delighted to welcome Peter and his team into WMG", commented , WMG鈥檚 Director of Research. "Their expertise and partnerships in this crucial area complement our existing research and align perfectly with our aim to enable industry to become more sustainable, resilient and competitive."

Find out more about WMG鈥檚 Power Electronics, Machines and Drives research.Link opens in a new window



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